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Microfluidic Based Fabrication and Characterization of Highly Porous Polymeric Microspheres

机译:基于微流体的高多孔聚合物微球的制备和表征

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摘要

Polymeric porous particles are currently used for various applications in biotechnology, tissue engineering and pharmaceutical science, e.g., floating drug delivery systems and inhaled formulations. Particle shape and size depend on variable parameters; among them, polymer type and concentration, stirring speed, pH and type of solvent. In this study, porous poly(lactic-co-glycolic) acid (PLGA) and poly(d,l-lactide) (PLA) microspheres (MPs), with varying sizes and morphologies, were synthesized and optimized using both batch formulation and a flow-focusing microfluidic device. A well-established method of preparation utilizing solvent evaporation and the double emulsion technique was performed. Similar to other batch encapsulation methods, this technique is time and reagent consuming and consists of several steps. Hence, although porous structures provide tremendous opportunity in the design of new applications for tissue engineering and as improved controlled-release carriers, the synthesis of these particles with predefined properties remains challenging. We demonstrated the fabrication of porous MPs using a simple microfluidic device, compared to batch synthesis fabrication; and the effect of solvent, polymer concentration and type, post-hydrolysis treatment, on porosity degree. Moreover, a kinetic release study of fluorescent molecule was conducted for non-porous in comparison to porous particles. An overview of future prospects and the potential of these porous beads in this scientific area are discussed.
机译:聚合多孔颗粒目前用于生物技术,组织工程和制药科学中的各种应用,例如,浮动药物递送系统和吸入制剂。颗粒的形状和大小取决于可变的参数。其中,聚合物类型和浓度,搅拌速度,pH和溶剂类型。在这项研究中,使用批料配方和液相色谱法,合成并优化了具有不同尺寸和形态的多孔聚乳酸-乙醇酸共聚物(PLGA)和聚丙交酯(PLA)微球(MPs)。流动聚焦微流体装置。进行了利用溶剂蒸发和双重乳液技术的成熟的制备方法。与其他批次封装方法类似,此技术既费时又消耗试剂,并且包含多个步骤。因此,尽管多孔结构在组织工程新应用的设计中提供了巨大的机会,并为改进的控释载体提供了机遇,但具有预定性质的这些颗粒的合成仍然具有挑战性。与批量合成制造相比,我们展示了使用简单的微流体装置制造多孔MP的过程。以及溶剂,聚合物浓度和类型,水解后处理对孔隙度的影响。此外,与多孔颗粒相比,对无孔荧光分子进行了动力学释放研究。讨论了这些科学领域中多孔珠的未来前景和潜力。

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